A shower head capable of being quickly assembled
The design of the engaging part and locking stop component solves the problem of unstable assembly of the shower head cover, realizing a fast and stable assembly process and improving the ease of operation and safety.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- KYLIN SANITARY TECH XIAMEN
- Filing Date
- 2023-05-24
- Publication Date
- 2026-05-15
AI Technical Summary
The existing shower head cover has a long rotation stroke during assembly, which leads to unstable assembly, easy separation and falling off, affecting the ease of operation and safety.
The design employs a snap-fit mechanism and a locking stop, which, through the rotational snap-fit of the claw and the slot and the telescopic cooperation of the locking stop, enables the quick installation and removal of the faceplate assembly, restricts the rotation of the water distribution assembly relative to the main body, and ensures the rapid and stable assembly of the faceplate and the inclined water body.
The rotation stroke of the cover is shortened, preventing the cover from separating and falling off during rotation, thus improving the convenience and safety of the assembly process.
Smart Images

Figure CN116586212B_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of shower head technology, and more specifically to a shower head that can be quickly assembled. Background Technology
[0002] A detachable shower head, as disclosed in Chinese Patent Publication No. CN202951581U, involves aligning the clips of the shower head with the grooves of the inclined water body during installation. The shower head and the inclined water body initially rotate counter-clockwise together until the inclined water body reaches its limit position and comes to rest relative to the main body. Only then can the shower head continue to rotate counter-clockwise relative to the inclined water body, allowing the clips to engage and limit the movement before assembly is complete. This design results in a long total rotational stroke of the shower head, making it difficult for the shower head and the inclined water body to assemble quickly and stably during rotation. This can lead to the shower head separating and falling off, causing damage or injury. The ease of operation and safety of the assembly process need improvement. Summary of the Invention
[0003] The present invention aims to provide a shower head that can be quickly assembled, so as to solve the above-mentioned technical problems.
[0004] To achieve the above objectives, the technical solution of the present invention is as follows: a shower head that can be quickly assembled, comprising a body assembly, a water distribution assembly, and a faceplate assembly. The body assembly includes a body having an assembly cavity. The water distribution assembly is rotatably installed in the assembly cavity of the body. The water distribution assembly includes an inclined water body and a water distribution body disposed inside the inclined water body. The inclined water body is provided with a groove. The faceplate assembly includes a faceplate and a locking part. The locking part and the groove are rotatably engaged, allowing the faceplate assembly to be detachably installed on the water distribution assembly. The inclined water body is provided with a retractable locking stop corresponding to the groove position. The locking stop has a locking part and a blocking part. The body assembly is provided with a locking engagement part. The locking part and the locking engagement part are correspondingly engaged, thereby restricting the rotation of the water distribution assembly relative to the body. The blocking part is used to limit the locking part in the groove, thereby restricting the rotation of the faceplate assembly relative to the water distribution assembly.
[0005] In one embodiment, the engaging portion and the locking stop are configured such that when the engaging portion is pressed against the blocking portion of the locking stop, the locking stop retracts to lock the locking portion against the locking engagement portion; when the engaging portion rotates away from the blocking portion of the locking stop, the locking stop retracts to limit the engaging portion within the slot, thereby enabling the faceplate assembly to be quickly installed onto the water distribution assembly.
[0006] In one embodiment, the locking engagement part is an arc-shaped toothed rack provided on the body, and the locking part is a toothed head, which engages with the arc-shaped toothed rack for locking and limiting.
[0007] In one embodiment, the main body is retractably provided with an unlocking member, and the unlocking member and the locking stop member are configured such that when the unlocking member drives the locking stop member to retract, the locking part of the locking stop member and the locking engagement part are locked together, and the blocking part of the locking stop member releases the locking part from the limit of the locking part in the slot.
[0008] In one embodiment, the upper and lower sides of the blocking part are a blocking convex surface and a yielding concave surface, respectively. The unlocking member is driven to cooperate with the yielding concave surface. The blocking convex surface is used to limit the engaging part in the slot, thereby restricting the face cover assembly from rotating relative to the water distribution assembly.
[0009] In one embodiment, the inner side of the inclined water body is provided with multiple baffle slots, and an elastic column is installed on the assembly cavity of the body. The elastic column and the baffle slots are correspondingly engaged to realize the switching of water output level and sound reminder. The unlocking component is a button. When the water output level is at the starting end, the locking component is located between the locking engagement part and the button to realize the unlocking engagement.
[0010] In one embodiment, the device further includes an elastic reset member, an upper receiving groove is provided at the corresponding slot position of the inclined water body, and a lower receiving groove is provided at the corresponding slot position of the dividing water body. The upper receiving groove and the lower receiving groove are combined to form a receiving groove, and the locking stop member is retractably disposed in the receiving groove through the elastic reset member.
[0011] In one embodiment, the faceplate assembly further includes a water outlet body installed inside the faceplate. The inclined water body, the water outlet body, and the faceplate cooperate to form a first annular water outlet channel, a second annular water outlet channel, and a third annular water outlet channel distributed sequentially from the inside to the outside. The inclined water body has an inner ring protrusion between the first annular water outlet channel and the second annular water outlet channel, and an outer ring protrusion between the second annular water outlet channel and the third annular water outlet channel. The water outlet body is provided with an inner ring assembly groove and an outer ring assembly groove. The inner ring assembly groove and the inner ring protrusion are sealed together, and the outer ring assembly groove and the outer ring protrusion are sealed together. The faceplate is provided with a plurality of vent holes communicating with the inner ring assembly groove or the outer ring assembly groove.
[0012] In one embodiment, there are multiple slots, which are disposed on the outer periphery of the inclined water body. The engaging part is a claw, and there are multiple claws, which are disposed on the outer periphery of the cover. The slot includes an inlet slot and a limiting slot that are L-shaped to each other. A locking stop is retractably disposed at the bottom of the inlet slot, and the claw engages with the limiting slot for limiting.
[0013] In one embodiment, the top of the blocking part is a first inclined surface, and the bottom of the claw is a second inclined surface, with the first inclined surface and the second inclined surface corresponding to each other.
[0014] The present invention has the following beneficial effects:
[0015] This invention includes a main body assembly, a water distribution assembly, and a cover assembly. The main body assembly includes a main body with an assembly cavity. The water distribution assembly is rotatably installed in the assembly cavity of the main body. The water distribution assembly includes an inclined water body and a water distribution element disposed inside the inclined water body. The inclined water body is provided with a slot. The cover assembly includes a cover and a locking part. The locking part and the slot are rotatably engaged, allowing the cover assembly to be detachably installed on the water distribution assembly. The inclined water body is provided with a retractable locking stop corresponding to the slot position. The locking stop has a locking part and a blocking part. The main body assembly is provided with a locking engagement part. The locking part and the locking engagement part are correspondingly engaged, thereby restricting the rotation of the water distribution assembly relative to the main body. The blocking part is used to limit the locking part within the slot, thereby restricting the rotation of the cover assembly relative to the water distribution assembly. This design results in a shorter total rotation stroke of the cover, ensuring that the cover can be quickly and stably assembled with the inclined water body, preventing the cover from separating and falling off during rotation, causing unnecessary damage or injury to personnel, and improving the ease of operation and safety of the assembly process. Attached Figure Description
[0016] Figure 1 This is a front view of an embodiment of the present invention;
[0017] Figure 2 This is an exploded view of one embodiment of the present invention;
[0018] Figure 3 This is a schematic diagram of the appearance of one embodiment of the present invention (I);
[0019] Figure 4 yes Figure 3 Sectional view at point AA;
[0020] Figure 5 This is a schematic diagram (II) of the appearance of one embodiment of the present invention;
[0021] Figure 6 yes Figure 5 Sectional view at point BB;
[0022] Figure 7 This is a schematic diagram of a water-dividing component according to an embodiment of the present invention at one angle;
[0023] Figure 8 This is a schematic diagram of a water distribution component according to an embodiment of the present invention from another angle;
[0024] Figure 9 This is a schematic diagram of the structure after removing the faceplate assembly according to an embodiment of the present invention;
[0025] Figure 10 This is a schematic diagram of the structure of a faceplate assembly according to an embodiment of the present invention;
[0026] Figure 11This is a schematic diagram of the structure of the body component of an embodiment of the present invention at one angle;
[0027] Figure 12 This is a schematic diagram of the structure of the body component of one embodiment of the present invention from another angle;
[0028] Figure 13 This is a schematic diagram of the structure of a water distribution body according to an embodiment of the present invention;
[0029] Figure 14 This is a schematic diagram of the structure of an inclined water body according to an embodiment of the present invention;
[0030] Figure 15 This is a schematic diagram of the structure of a locking stop component according to an embodiment of the present invention.
[0031] Attached diagram labels: 1. Body assembly, 1-1 Body, 1-11 Locking mating part, 1-12 Support column, 1-13 Elastic column, 1-14 Support frame, 1-15 Assembly cavity, 1-16 Handle end, 1-17 Button hole, 1-2 Fixing seat, 1-3 Threaded connector, 1-4 Unlocking part, 1-41 Button surface, 2. Water distribution assembly, 2-1 Inclined water body, 2-11 Inner ring protrusion, 2-12 Outer ring protrusion, 2-13 Slot, 2-131 Inlet slot, 2-132 Limiting slot, 2-14 Arrow indicator, 2-15 Stop slot hole, 2-16 Arc-shaped guide slot, 2-2 Water distribution body. 2-3 Receiving groove, 2-31 Upper receiving groove, 2-32 Lower receiving groove, 3 Face cover assembly, 3-1 Face cover, 3-11 Claw, 3-111 Second inclined surface, 3-12 Switching handle, 3-13 Vent hole, 3-2 Water outlet, 3-21 Inner ring assembly groove, 3-22 Outer ring assembly groove, 4 Locking stop part, 4-1 Locking part, 4-2 Blocking part, 4-21 First inclined surface, 4-22 Third inclined surface, 4-23 Blocking convex surface, 4-24 Leaving concave surface, 5 Screw, 6 Spring, 7 First annular water outlet channel, 8 Second annular water outlet channel, 9 Third annular water outlet channel. Detailed Implementation
[0032] To further illustrate the various embodiments, the present invention provides accompanying drawings. These drawings are part of the disclosure of the present invention, primarily used to illustrate the embodiments and to explain the operating principles of the embodiments in conjunction with the relevant descriptions in the specification. With reference to these drawings, those skilled in the art should be able to understand other possible implementations and the advantages of the present invention. Components in the drawings are not drawn to scale, and similar component symbols are generally used to represent similar components.
[0033] See Figure 1-15As shown in the figure, as an embodiment of the present invention, a shower head that can be quickly assembled is provided, including a body assembly 1, a water distribution assembly 2, and a faceplate assembly 3. The body assembly 1 includes a body 1-1 having an assembly cavity 1-15. The water distribution assembly 2 is rotatably installed in the assembly cavity 1-15 of the body 1-1. The water distribution assembly 2 includes an inclined water body 2-1 and a water distribution body 2-2 disposed inside the inclined water body 2-1. The inclined water body 2-1 is provided with a groove 2-13. The faceplate assembly 3 includes a faceplate 3-1. The faceplate 3-1 is provided with a locking part, specifically a locking claw 3-11. The locking claw 3-11 engages with the locking claw 3-11. The groove 2-13 rotates and engages, allowing the faceplate assembly 3 to be detachably installed on the water distribution assembly 2. The inclined water body 2-1 is provided with a locking stop 4 that is retractable at the position corresponding to the groove 2-13. The locking stop 4 has a locking part 4-1 and a blocking part 4-2. The body assembly 1 is provided with a locking engagement part 1-11. The locking part 4-1 and the locking engagement part 1-11 are correspondingly engaged, thereby restricting the rotation of the water distribution assembly 2 relative to the body 1-1. The blocking part 4-2 is used to limit the claw 3-11 in the groove 2-13, thereby restricting the rotation of the faceplate assembly 3 relative to the water distribution assembly 2.
[0034] The engaging part and the locking stop 4 are configured such that when the engaging part is pressed against the blocking part 4-2 of the locking stop 4, the locking stop 4 retracts so that the locking part 4-1 is locked in place with the locking engagement part 1-11. When the engaging part rotates away from the blocking part 4-2 of the locking stop 4, the locking stop 4 retracts so that the blocking part 4-2 limits the engaging part in the slot 2-13, thereby enabling the faceplate assembly 3 to be quickly installed onto the water distribution assembly 2.
[0035] In the above technical solution, when installing the faceplate assembly 3, the claw 3-11 of the faceplate 3-1 is aligned with the slot 2-13 of the inclined water body 2-1 and pressed downwards. The claw 3-11 engages with the blocking part 4-2, causing the locking stop 4 to retract, thus locking the locking part 4-1 and the locking engagement part 1-11, thereby restricting the rotation of the water distribution assembly 2 relative to the main body assembly 1. This allows the faceplate assembly 3 to rotate counterclockwise relative to the water distribution assembly 2 until the claw 3-11 and the slot 2-13 are fully engaged. After this, the claw 3-11 releases the engagement with the blocking part 4-2, and the locking stop 4 retracts, causing the blocking part 4-2 to limit the claw 3-11 within the slot 2-13. The device enables the faceplate assembly 3 to be quickly assembled onto the water distribution assembly 2. At this time, the locking part 4-1 and the locking engagement part 1-11 are disengaged, and the water distribution assembly 2 can rotate relative to the main body assembly 1. Specifically, by rotating the faceplate assembly 3, the faceplate assembly 3 and the water distribution assembly 2 rotate together relative to the main body assembly 1, thereby enabling the switching and adjustment of various water outlet levels. When assembling the faceplate assembly 3 of the present invention, its total rotation stroke is relatively short, ensuring that the faceplate 3-1 can be quickly and stably assembled into place with the inclined water body 2-1, avoiding the faceplate 3-1 from separating and falling off during rotation, causing unnecessary damage or injury to personnel, and improving the ease of operation and safety and reliability of the assembly process.
[0036] In this embodiment, the main body assembly 1 also includes a fixed base 1-2 and a threaded connector 1-3. The fixed base 1-2 and the water distribution assembly 2 are both installed in the assembly cavity 1-15 of the main body 1-1 by screws 5 passing through their centers. The threaded connector 1-3 is installed and locked onto the handle end 1-16 of the main body 1-1 for connection to the water inlet pipe (not shown). The fixed base 1-2 is fixedly positioned relative to the main body 1-1, and the water distribution assembly 2 is rotatably positioned relative to the fixed base 1-2. The locking engagement part 1-11 is an arc-shaped toothed rack on the main body 1-1, and the locking part 4-1 is a toothed head. The toothed head and the arc-shaped toothed rack engage in a locking and limiting fit, ensuring a more precise and stable limiting process. Of course, in other cases, the arc-shaped toothed rack can also be positioned on the circumferential outer side of the fixed base 1-2.
[0037] In this embodiment, the main body 1-1 is retractably provided with an unlocking member 1-4. The unlocking member 1-4 and the locking stop member 4 are configured such that when the unlocking member 1-4 drives the locking stop member 4 to retract, the locking part 4-1 of the locking stop member 4 is locked in place with the locking engagement part 1-11, and the blocking part 4-2 of the locking stop member 4 releases the limit of the claw 3-11 in the slot 2-13.
[0038] When it is necessary to disassemble the face cover assembly 3, simply rotate the face cover assembly 3 so that the face cover assembly 3 and the water distribution assembly 2 rotate clockwise together until the locking stop 4 rotates to the position corresponding to the unlocking part 1-4. Operate the unlocking part 1-4 so that the unlocking part 1-4 drives the locking stop 4 to retract, so that the locking part 4-1 and the locking engagement part 1-11 are locked together, restricting the rotation of the water distribution assembly 2 relative to the main body assembly 1. At the same time, the blocking part 4-2 releases the limit of the claw 3-11 in the slot 2-13. Continue to rotate the face cover assembly 3 clockwise so that the face cover assembly 3 rotates clockwise relative to the water distribution assembly 2 until the claw 3-11 is unscrewed out of the slot 2-13, and the face cover assembly 3 can be disassembled and removed.
[0039] Specifically, the upper and lower sides of the blocking part 4-2 are a blocking convex surface 4-23 and a yielding concave surface 4-24, respectively. The unlocking part 1-4 drives the yielding concave surface 4-24 to cooperate. The blocking convex surface 4-23 is used to limit the claw 3-11 in the slot 2-13, thereby restricting the face cover assembly 3 from rotating relative to the water distribution assembly 2. This setting allows the unlocking part 1-4 to drive the locking stop 4 to retract when it drives the yielding concave surface 4-24 to cooperate, so that the blocking convex surface 4-23 releases the claw 3-11 from the slot 2-13. At the same time, the unlocking part 1-4 will not cause obstruction or interference to the claw 3-11, so that the claw 3-11 can be smoothly rotated out of the slot 2-13.
[0040] In this embodiment, multiple baffle slots 2-15 are provided on the inner side of the inclined water body 2-1. The multiple baffle slots 2-15 are arranged in an arc shape, and an arc-shaped guide groove 2-16 is formed between adjacent baffle slots 2-15. An elastic column 1-13 is installed on the assembly cavity 1-15 of the body 1-1. The arc-shaped guide groove 2-16 is used to slide and guide the elastic column 1-13. The elastic column 1-13 and the baffle slot 2-15 are elastically limited to achieve water output level switching and sound reminder. Specifically, the depth of the baffle slot 2-15 is greater than the depth of the arc-shaped guide groove 2-16, so that when the elastic column 1-13 falls into the baffle slot 2-15, it will generate a sound due to elastic contact, thereby serving as a water output level switching reminder.
[0041] In this embodiment, the unlocking component 1-4 is a button, which is telescopically mounted on the outer circumferential side of the body 1-1 via a spring 6. When the water outlet position is at the starting end, the locking stop component 4 is located between the locking engagement part 1-11 and the button, that is, the button is positioned opposite the leftmost end of the arc-shaped toothed rack, for unlocking engagement. When it is necessary to disassemble the face cover assembly 3, simply rotate the face cover assembly 3 clockwise, so that the face cover assembly 3 and the water distribution assembly 2 rotate clockwise together to the starting end of the water outlet position (that is, the leftmost end of the rotation stroke). At this time, the locking stop component 4 rotates to the position corresponding to the unlocking component 1-4. The elastic limit engagement position allows the button to be pressed, causing it to push the locking stop 4 inward, thus releasing the blocking part 4-2 from its limit in the slot 2-13. Continuing to rotate the face cover assembly 3 clockwise allows it to be disassembled from the water distribution assembly 2. This design means that when disassembling the face cover assembly 3, it only needs to be rotated to the leftmost position, at the beginning of the water outlet position. The elastic limit engagement between the elastic post 1-13 and the stop slot 2-15 provides an audible unlocking sound, ensuring precise alignment between the button and the locking stop 4 for quick and easy disassembly.
[0042] In this embodiment, a button hole 1-17 is provided on the outer circumferential side of the body 1-1. The button is telescopically mounted in the button hole 1-17 by a spring 6. The outer end face of the button protrudes from the button hole 1-17 of the body 1-1 to form a button surface 1-41. The button surface 1-41 has the same shape as the outer surface of the body 1-1, that is, the button surface 1-41 is integrated with the shape of the body 1-1, ensuring that the overall appearance of the shower head is more harmonious and beautiful, and will not hinder the normal use of the shower head.
[0043] Of course, the unlocking component 1-4 can be set at any position on the main body 1-1, and its form is not limited to a button. For example, it can be a skateboard, as long as it can drive the locking stop component 4 to retract.
[0044] In this embodiment, an elastic reset component, specifically a spring 6, is also included. The inclined water body 2-1 is provided with an upper receiving groove 2-31 at the position corresponding to the slot 2-13, and the water divider 2-2 is provided with a lower receiving groove 2-32 at the position corresponding to the slot 2-13. The upper receiving groove 2-31 and the lower receiving groove 2-32 are combined to form a receiving groove 2-3. The locking stop component 4 is telescopically disposed in the receiving groove 3 by means of the spring 6. The spring 6 is used to drive the locking stop component 4 to retract and reset. The above configuration makes it easier to assemble the locking stop component 4 on the water divider component 2 and has high operational stability.
[0045] See Figure 4 , 6As shown in Figures 9 and 10, in this embodiment, the face cover assembly 3 further includes a water outlet body 3-2 installed inside the face cover 3-1. The inclined water body 2-1, the water outlet body 3-2, and the face cover 3-1 cooperate to form a first annular water outlet channel 7, a second annular water outlet channel 8, and a third annular water outlet channel 9 distributed sequentially from the inside to the outside. By controlling the rotation of the face cover assembly 3 and the water distribution assembly 2 relative to the body 1-1, various water outlet modes can be adjusted to provide users with diverse choices. Specifically, there are five water outlet modes: inner ring shower water, inner ring shower water + middle ring shower water, inner ring shower water + middle ring shower water + outer ring shower water, outer ring shower water + middle ring shower water, and outer ring shower water. Among them, the inner ring shower water, middle ring shower water, and outer ring shower water... The water outlets correspond to the first annular water outlet channel 7, the second annular water outlet channel 8, and the third annular water outlet channel 9, respectively. An inner ring protrusion 2-11 is formed between the first annular water outlet channel 7 and the second annular water outlet channel 8, and an outer ring protrusion 2-12 is formed between the second annular water outlet channel 8 and the third annular water outlet channel 9. The water outlet body 3-2 is provided with an inner ring assembly groove 3-21 and an outer ring assembly groove 3-22. The inner ring assembly groove 3-21 and the inner ring protrusion 2-11 are sealed together, and the outer ring assembly groove 3-22 and the outer ring protrusion 2-12 are sealed together, ensuring that the water in the first annular water outlet channel 7, the second annular water outlet channel 8, and the third annular water outlet channel 9 does not flow between them, thus ensuring stable water output. The water outlet body 3-2 is made of a highly elastic material, such as silicone or rubber, to ensure a good seal.
[0046] In this embodiment, the face cover 3-1 is provided with a plurality of vent holes 3-13 that communicate with the inner ring assembly groove 3-21 or the outer ring assembly groove 3-22. The vent holes 3-13 are used to vent and release pressure on the face cover assembly 3 to prevent the air pressure on the face cover assembly 3 installed on the water distribution assembly 2 from being too high, having strong adsorption, and being difficult to disassemble, thus ensuring that the face cover assembly 3 is easier and less strenuous to disassemble.
[0047] In this embodiment, there are multiple slots 2-13, which are set on the outer periphery of the inclined water body 2-1. There are also multiple claws 3-11, which are set on the outer periphery of the cover 3-1. The claws 3-11 correspond one-to-one with the slots 2-13, and the claws 3-11 and slots 2-13 have two different structures to ensure more accurate alignment and installation. The above arrangement makes the layout area of the water outlet channel larger, thereby increasing the effective water outlet area of the water distribution component 2 and the cover component 3, and optimizing the structural layout, making the assembly more robust and stable.
[0048] See Figure 7As shown, in this embodiment, the slot 2-13 includes an L-shaped inlet slot 2-131 and a limiting slot 2-132. The locking stop 4 is telescopically positioned at the bottom of the inlet slot 2-131. After the claw 3-11 is aligned with the inlet slot 2-131 and pressed downward, the claw 3-11 and the blocking part 4-2 are pressed together, causing the locking stop 4 to retract. The claw 3-11 can be rotated to engage with the limiting slot 2-132 for limiting. Afterward, the blocking part 4-2 retracts to block and limit the claw 3-11.
[0049] In this embodiment, the clockwise and counterclockwise directions are as follows: Figure 1 Using the position as a reference, the faceplate assembly 3 is installed by rotating counterclockwise and disassembled by rotating clockwise. Of course, in other cases, it can also be installed by rotating clockwise and disassembled by rotating counterclockwise. You only need to adjust the structure of the slots 2-13 accordingly.
[0050] In this embodiment, the surface of the inclined water body 2-1 is provided with an arrow mark 2-14, and a switching handle 3-12 is provided on one side of the edge of the cover 3-1. The arrow mark 2-14 and the switching handle 3-12 correspond to each other, thereby facilitating quick positioning and assembly.
[0051] In this embodiment, the top of the blocking part 4-2 is the first inclined surface 4-21, and the bottom of the claw 3-11 is the second inclined surface 3-111. The first inclined surface 4-21 and the second inclined surface 3-111 are correspondingly engaged. This arrangement makes it easier for the claw 3-11 to engage with the blocking part 4-2, and makes assembly more convenient and labor-saving. The side of the blocking part 4-2 away from the limiting groove 2-132 is the third inclined surface 4-22. The arrangement of the third inclined surface 4-22 makes it convenient for the end of the button to slide into and engage with the blocking part 4-2.
[0052] In this embodiment, a support frame 1-14 is provided on the assembly cavity 1-15 of the main body 1-1. Multiple support columns 1-12 extend from the top of the arc-shaped toothed rack. The multiple support columns 1-12 and the top of the support frame 1-14 are at the same horizontal height. The support columns 1-12 and the support frame 1-14 cooperate with each other to support the water distribution body 2-2.
[0053] Although the invention has been specifically shown and described in conjunction with preferred embodiments, those skilled in the art should understand that various changes in form and detail made to the invention without departing from the spirit and scope of the invention as defined in the appended claims fall within the protection scope of the invention.
Claims
1. A shower head that can be quickly assembled, characterized in that: The system includes a main body assembly, a water distribution assembly, and a cover assembly. The main body assembly includes a main body with an assembly cavity. The water distribution assembly is rotatably installed within the assembly cavity of the main body. The water distribution assembly includes an inclined water body and a water distribution element disposed inside the inclined water body. The inclined water body is provided with a slot. The cover assembly includes a cover with a locking part. The locking part and the slot are rotatably engaged, allowing the cover assembly to be detachably installed on the water distribution assembly. The inclined water body is retractably provided with a locking stop corresponding to the slot position. The locking stop has a locking part and a blocking part. The main body assembly is provided with a locking engagement part. The locking part cooperates with the locking part to restrict the rotation of the water distribution assembly relative to the main body. The blocking part is used to limit the engaging part in the slot, thereby restricting the rotation of the cover assembly relative to the water distribution assembly. The engaging part and the locking stop are configured such that when the engaging part is pressed against the blocking part of the locking stop, the locking stop retracts to lock the locking part and the locking part in a corresponding locking engagement. When the engaging part rotates away from the blocking part of the locking stop, the locking stop retracts to limit the engaging part in the slot, so as to realize the quick installation of the cover assembly onto the water distribution assembly.
2. The shower head that can be quickly assembled according to claim 1, characterized in that: The locking part is an arc-shaped toothed rack on the main body, and the locking part is a toothed head. The toothed head and the arc-shaped toothed rack are locked and limited together.
3. The shower head that can be quickly assembled according to claim 1, characterized in that: The main body is retractably equipped with an unlocking component. The unlocking component and the locking stop component are configured such that when the unlocking component drives the locking stop component to retract, the locking part of the locking stop component and the locking engagement part are locked together, and the blocking part of the locking stop component releases the limiting position of the engaging part in the slot.
4. The shower head that can be quickly assembled according to claim 3, characterized in that: The upper and lower sides of the blocking part are a blocking convex surface and a yielding concave surface, respectively. The unlocking part and the yielding concave surface are driven to cooperate. The blocking convex surface is used to limit the engaging part in the slot, thereby restricting the face cover assembly from rotating relative to the water distribution assembly.
5. The shower head that can be quickly assembled according to claim 3, characterized in that: The inclined water body has multiple baffle slots on its inner side. An elastic column is installed on the assembly cavity of the main body. The elastic column and the baffle slots are matched to realize the switching of water output level and sound reminder. The unlocking part is a button. When the water output level is at the starting end, the locking part is located between the locking part and the button to realize the unlocking engagement.
6. The shower head that can be quickly assembled according to claim 1, characterized in that: It also includes an elastic reset component, an upper receiving groove is provided at the corresponding slot position of the inclined water body, and a lower receiving groove is provided at the corresponding slot position of the dividing water body. The upper receiving groove and the lower receiving groove are combined to form a receiving groove, and the locking stop component is telescopically installed in the receiving groove through the elastic reset component.
7. The shower head that can be quickly assembled according to claim 6, characterized in that: The faceplate assembly also includes a water outlet body installed inside the faceplate. The inclined water body, the water outlet body, and the faceplate cooperate with each other to form a first annular water outlet channel, a second annular water outlet channel, and a third annular water outlet channel distributed sequentially from the inside to the outside. The inclined water body has an inner ring protrusion between the first annular water outlet channel and the second annular water outlet channel, and an outer ring protrusion between the second annular water outlet channel and the third annular water outlet channel. The water outlet body is provided with an inner ring assembly groove and an outer ring assembly groove. The inner ring assembly groove and the inner ring protrusion are sealed together, and the outer ring assembly groove and the outer ring protrusion are sealed together. The faceplate is provided with multiple vent holes that communicate with the inner ring assembly groove or the outer ring assembly groove.
8. The shower head that can be quickly assembled according to claim 1, characterized in that: There are multiple slots, which are set on the outer periphery of the inclined water body. The engaging part is a claw, and there are multiple claws, which are set on the outer periphery of the cover. The slot includes an inlet slot and a limiting slot that are L-shaped to each other. The locking stop is telescopically set at the bottom of the inlet slot. The claw engages with the limiting slot to limit the position.
9. The shower head that can be quickly assembled according to claim 1, characterized in that: The top of the blocking part is a first inclined surface, and the bottom of the chuck is a second inclined surface. The first inclined surface and the second inclined surface are in corresponding fit.